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Evaluation of Conservation Voltage Reduction with Analytic Hierarchy Process: A Decision Support Framework in Grid Operations Planning

机译:层次分析法评估节能降压:电网运营规划中的决策支持框架

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This paper presents a systematic framework to evaluate the performance of conservation voltage reduction (CVR) by determining suitable substations for CVR in operations planning. Existing CVR planning practice generally only focuses on the energy saving aspect without taking other underlying attributes into account, i.e., network topology and reduced voltage effects on other substations. To secure the desired operating reserve and avoid any adverse impacts, these attributes should be considered for implementing CVR more effectively. This research develops a practical decision-making framework based on the analytic hierarchy process (AHP) to quantify several of the aforementioned attributes. Candidate substations for CVR deployment are prioritized such that performances are compared in terms of power transfer distribution factor (PTDF), voltage sensitivity factor (VSF), and CVR factor. In addition, to meet a specified reserve requirement, an integer programming approach is adopted to select potential substations for CVR implementations. Case studies for a Korean electric power system under diverse operating conditions are performed to demonstrate the effectiveness of the proposed method.
机译:本文提出了一个系统框架,可通过在运营计划中确定适合CVR的变电站来评估节能降压(CVR)的性能。现有的CVR规划实践通常只关注节能方面,而没有考虑其他潜在属性,即网络拓扑和对其他变电站的电压降低影响。为了确保所需的运营储备并避免任何不利影响,应考虑这些属性,以更有效地实施CVR。这项研究基于层次分析法(AHP)开发了一种实用的决策框架,以量化上述属性中的一些。优先考虑用于CVR部署的候选变电站,以便根据功率传输分配因子(PTDF),电压灵敏度因子(VSF)和CVR因子比较性能。另外,为了满足指定的备用要求,采用整数编程方法来选择潜在的变电站以实现CVR。通过对韩国电力系统在各种运行条件下的案例研究,证明了该方法的有效性。

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